Brown Hannah K, Schiavone Kristina, Tazzyman Simon, Heymann Dominique, Chico Timothy Ja
a Department of Oncology and Metabolism , The Medical School, University of Sheffield , Sheffield , UK.
b Sarcoma Research Unit, Medical School , INSERM, European Associated Laboratory, University of Sheffield , Sheffield , UK.
Expert Opin Drug Discov. 2017 Apr;12(4):379-389. doi: 10.1080/17460441.2017.1297416.
Patients with metastatic cancer suffer the highest rate of cancer-related death, but existing animal models of metastasis have disadvantages that limit our ability to understand this process. The zebrafish is increasingly used for cancer modelling, particularly xenografting of human cancer cell lines, and drug discovery, and may provide novel scientific and therapeutic insights. However, this model system remains underexploited. Areas covered: The authors discuss the advantages and disadvantages of the zebrafish xenograft model for the study of cancer, metastasis and drug discovery. They summarise previous work investigating the metastatic cascade, such as tumour-induced angiogenesis, intravasation, extravasation, dissemination and homing, invasion at secondary sites, assessing metastatic potential and evaluation of cancer stem cells in zebrafish. Expert opinion: The practical advantages of zebrafish for basic biological study and drug discovery are indisputable. However, their ability to sufficiently reproduce and predict the behaviour of human cancer and metastasis remains unproven. For this to be resolved, novel mechanisms must to be discovered in zebrafish that are subsequently validated in humans, and for therapeutic interventions that modulate cancer favourably in zebrafish to successfully translate to human clinical studies. In the meantime, more work is required to establish the most informative methods in zebrafish.
转移性癌症患者的癌症相关死亡率最高,但现有的转移动物模型存在一些缺点,限制了我们对这一过程的理解能力。斑马鱼越来越多地用于癌症建模,特别是人类癌细胞系的异种移植和药物发现,并且可能提供新的科学和治疗见解。然而,这个模型系统仍未得到充分利用。涵盖领域:作者讨论了斑马鱼异种移植模型在癌症、转移和药物发现研究中的优缺点。他们总结了以往研究转移级联反应的工作,如肿瘤诱导的血管生成、内渗、外渗、播散和归巢、在继发部位的侵袭、评估转移潜能以及斑马鱼中癌症干细胞的评估。专家意见:斑马鱼在基础生物学研究和药物发现方面的实际优势是无可争议的。然而,它们充分再现和预测人类癌症及转移行为的能力仍未得到证实。要解决这个问题,必须在斑马鱼中发现新的机制,随后在人类中进行验证,并且使在斑马鱼中有利地调节癌症的治疗干预措施成功转化为人类临床研究。与此同时,需要开展更多工作来确定斑马鱼中最具信息量的方法。